Modelling crushing failure in 3D limit analysis of masonry block structures by mathematical programming

被引:0
|
作者
Portioli, F. [1 ]
Cascini, L. [1 ]
Casapulla, C. [1 ]
Landolfo, R. [1 ]
机构
[1] Univ Naples Federico II, Dept Struct Engn & Architecture, Naples, Italy
关键词
WALLS;
D O I
暂无
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
In rigid block limit analysis of masonry structures, an infinite compressive is usually assumed at contact interfaces. This assumption is generally suitable to model unreinforced masonry structures with dry-joint or poor quality mortar joints, such as historical buildings, whose behaviour is mainly governed by nil or low tensile strength, sliding and rocking failure. Nevertheless, crushing could significantly affect the collapse behaviour of masonry structures, as it is the case of strengthened masonry. Indeed, the use of strengthening devices, such as metal ties or composite strips, may produce stress concentration in compression and, as a consequence, crushing failure of masonry panels. In this paper an efficient iterative solution procedure is presented to model crushing failure in 3D limit analysis of masonry block structures using mathematical programming. A concave contact model is adopted for interfaces, with contact points located at the corners of the interface to represent interactions. A no-tension and non-associative frictional behaviour with limited compressive strength is considered for joints. The limit analysis problem is formulated as a second order cone programming problem (SOCP). The accuracy and the computational efficiency of the proposed formulation are evaluated comparing the results of the proposed formulation with those obtained from experimental tests and alternative formulations from the literature.
引用
收藏
页码:309 / 314
页数:6
相关论文
共 50 条
  • [21] Limit fire analysis of 3D frame structures
    Magisano, Domenico
    Garcea, Giovanni
    ENGINEERING STRUCTURES, 2021, 233 (233)
  • [22] 3D FE limit analysis model for multi-layer masonry structures reinforced with FRP strips
    Milani, Gabriele
    INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2010, 52 (06) : 784 - 803
  • [23] MACRO AND MICRO-BLOCK MODELLING FOR LIMIT ANALYSIS OF MASONRY STRUCTURES WITH NON-ASSOCIATIVE FRICTIONAL JOINTS
    Casapulla, Claudia
    Portioli, Francesco
    Maione, Alessandra
    Landolfo, Raffaele
    STRUCTURAL ANALYSIS OF HISTORICAL CONSTRUCTIONS, VOLS 1-3, 2012, : 441 - 448
  • [24] 3D Limit Analysis Voxel Approach for the Homogenization of Masonry with Irregular Bond
    Tiberti, Simone
    Milani, Gabriele
    INTERNATIONAL CONFERENCE ON NUMERICAL ANALYSIS AND APPLIED MATHEMATICS (ICNAAM-2018), 2019, 2116
  • [25] 3D homogenized limit analysis of masonry buildings under horizontal loads
    Milani, Gabriele
    Lourenco, Paulo
    Tralli, Antonio
    ENGINEERING STRUCTURES, 2007, 29 (11) : 3134 - 3148
  • [26] ANALYSIS OF HISTORIC MASONRY STRUCTURES SUPPORTED BY 3D LASER SCANNING
    Thelin, Carl
    Hoest, Folke
    Rosenberg, Clas
    STRUCTURAL ANALYSIS OF HISTORICAL CONSTRUCTIONS, VOLS 1-3, 2012, : 2519 - 2527
  • [27] Force-Based Seismic Evaluation of Retrofitting Interventions of Historic Masonry Castles by 3D Rigid Block Limit Analysis
    Cascini, Lucrezia
    Brando, Giuseppe
    Portioli, Francesco P. A.
    Forgione, Morena Rita
    Mazzanti, Claudio
    Vasta, Marcello
    APPLIED SCIENCES-BASEL, 2020, 10 (15):
  • [28] Modelling of vaults as equivalent diaphragms in 3D seismic analysis of masonry buildings
    Cattari, Serena
    Resemini, Sonia
    Lagomarsino, Sergio
    STRUCTURAL ANALYSIS OF HISTORIC CONSTRUCTION: PRESERVING SAFETY AND SIGNIFICANCE, VOLS 1 AND 2, 2008, : 517 - 524
  • [29] Limit analysis of cracked structures by mathematical programming and finite element technique
    Yan, AM
    Nguyen-Dang, H
    COMPUTATIONAL MECHANICS, 1999, 24 (05) : 319 - 333
  • [30] Limit analysis of cracked structures by mathematical programming and finite element technique
    A. M. Yan
    H. Nguyen-Dang
    Computational Mechanics, 1999, 24 : 319 - 333